mirror of
https://github.com/jeremytammik/RevitSdkSamples.git
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670 lines
28 KiB
C#
670 lines
28 KiB
C#
//
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// (C) Copyright 2003-2019 by Autodesk, Inc.
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//
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// Permission to use, copy, modify, and distribute this software in
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// object code form for any purpose and without fee is hereby granted,
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// provided that the above copyright notice appears in all copies and
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// that both that copyright notice and the limited warranty and
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// restricted rights notice below appear in all supporting
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// documentation.
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//
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// AUTODESK PROVIDES THIS PROGRAM "AS IS" AND WITH ALL FAULTS.
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// AUTODESK SPECIFICALLY DISCLAIMS ANY IMPLIED WARRANTY OF
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// MERCHANTABILITY OR FITNESS FOR A PARTICULAR USE. AUTODESK, INC.
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// DOES NOT WARRANT THAT THE OPERATION OF THE PROGRAM WILL BE
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// UNINTERRUPTED OR ERROR FREE.
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//
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// Use, duplication, or disclosure by the U.S. Government is subject to
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// restrictions set forth in FAR 52.227-19 (Commercial Computer
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// Software - Restricted Rights) and DFAR 252.227-7013(c)(1)(ii)
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// (Rights in Technical Data and Computer Software), as applicable.
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//
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using System;
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using System.Data;
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using System.Text;
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using System.Collections;
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using System.Windows.Forms;
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using Autodesk.Revit;
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using Autodesk.Revit.DB;
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using Autodesk.Revit.DB.Structure;
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using Autodesk.Revit.UI;
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using Material = Autodesk.Revit.DB.Material;
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namespace Revit.SDK.Samples.MaterialProperties.CS
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{
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/// <summary>
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/// get the material physical properties of the selected beam, column or brace
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/// get all material types and their sub types to the user and then change the material type of the selected beam to the one chosen by the user
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/// with a selected concrete beam, column or brace, change its unit weight to 145 P/ft3
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/// </summary>
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[Autodesk.Revit.Attributes.Transaction(Autodesk.Revit.Attributes.TransactionMode.Manual)]
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[Autodesk.Revit.Attributes.Regeneration(Autodesk.Revit.Attributes.RegenerationOption.Manual)]
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[Autodesk.Revit.Attributes.Journaling(Autodesk.Revit.Attributes.JournalingMode.NoCommandData)]
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public class MaterialProperties : Autodesk.Revit.UI.IExternalCommand
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{
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const double ToMetricUnitWeight = 0.010764; //coefficient of converting unit weight from internal unit to metric unit
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const double ToMetricStress = 0.334554; //coefficient of converting stress from internal unit to metric unit
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const double ToImperialUnitWeight = 6.365827; //coefficient of converting unit weight from internal unit to imperial unit
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const double ChangedUnitWeight = 14.5; //the value of unit weight of selected component to be set
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Autodesk.Revit.UI.UIApplication m_revit = null;
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Hashtable m_allMaterialMap = new Hashtable(); //hashtable contains all materials with index of their ElementId
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FamilyInstance m_selectedComponent = null; //selected beam, column or brace
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Parameter m_currentMaterial = null; //current material of selected beam, column or brace
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Material m_cacheMaterial;
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ArrayList m_steels = new ArrayList(); //arraylist of all materials belonging to steel type
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ArrayList m_concretes = new ArrayList(); //arraylist of all materials belonging to concrete type
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/// <summary>
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/// get the material type of selected element
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/// </summary>
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public StructuralAssetClass CurrentType
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{
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get
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{
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Material material = CurrentMaterial as Material;
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int materialId = 0;
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if (material != null)
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{
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materialId = material.Id.IntegerValue;
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}
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if (materialId <= 0)
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{
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return StructuralAssetClass.Generic;
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}
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Autodesk.Revit.DB.Material materialElem = (Autodesk.Revit.DB.Material)m_allMaterialMap[materialId];
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if (null == materialElem)
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{
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return StructuralAssetClass.Generic;
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}
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return GetMaterialType(materialElem);
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}
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}
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/// <summary>
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/// get the material attribute of selected element
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/// </summary>
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public object CurrentMaterial
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{
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get
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{
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m_cacheMaterial = GetCurrentMaterial();
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return m_cacheMaterial;
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}
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}
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/// <summary>
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/// arraylist of all materials belonging to steel type
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/// </summary>
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public ArrayList SteelCollection
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{
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get
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{
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return m_steels;
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}
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}
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/// <summary>
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/// arraylist of all materials belonging to concrete type
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/// </summary>
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public ArrayList ConcreteCollection
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{
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get
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{
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return m_concretes;
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}
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}
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/// <summary>
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/// three basic material types in Revit
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/// </summary>
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public ArrayList MaterialTypes
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{
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get
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{
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ArrayList typeAL = new ArrayList();
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typeAL.Add("Undefined");
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typeAL.Add("Basic");
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typeAL.Add("Generic");
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typeAL.Add("Metal");
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typeAL.Add("Concrete");
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typeAL.Add("Wood");
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typeAL.Add("Liquid");
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typeAL.Add("Gas");
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typeAL.Add("Plastic");
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return typeAL;
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}
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}
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/// <summary>
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/// Implement this method as an external command for Revit.
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/// </summary>
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/// <param name="commandData">An object that is passed to the external application
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/// which contains data related to the command,
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/// such as the application object and active view.</param>
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/// <param name="message">A message that can be set by the external application
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/// which will be displayed if a failure or cancellation is returned by
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/// the external command.</param>
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/// <param name="elements">A set of elements to which the external application
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/// can add elements that are to be highlighted in case of failure or cancellation.</param>
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/// <returns>Return the status of the external command.
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/// A result of Succeeded means that the API external method functioned as expected.
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/// Cancelled can be used to signify that the user cancelled the external operation
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/// at some point. Failure should be returned if the application is unable to proceed with
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/// the operation.</returns>
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public Autodesk.Revit.UI.Result Execute(ExternalCommandData commandData,
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ref string message, Autodesk.Revit.DB.ElementSet elements)
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{
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Autodesk.Revit.UI.UIApplication revit = commandData.Application;
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m_revit = revit;
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if (!Init())
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{
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// there must be exactly one beam, column or brace selected
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TaskDialog.Show("Revit", "You should select only one beam, structural column or brace.");
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return Autodesk.Revit.UI.Result.Failed;
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}
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Transaction documentTransaction = new Transaction(commandData.Application.ActiveUIDocument.Document, "Document");
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documentTransaction.Start();
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MaterialPropertiesForm displayForm = new MaterialPropertiesForm(this);
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try
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{
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displayForm.ShowDialog();
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}
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catch
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{
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TaskDialog.Show("Revit", "Sorry that your command failed.");
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return Autodesk.Revit.UI.Result.Failed;
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}
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documentTransaction.Commit();
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return Autodesk.Revit.UI.Result.Succeeded;
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}
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/// <summary>
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/// get a datatable contains parameters' information of certain element
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/// </summary>
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/// <param name="o">Revit element</param>
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/// <param name="substanceKind">the material type of this element</param>
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/// <returns>datatable contains parameters' names and values</returns>
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public DataTable GetParameterTable(object o, StructuralAssetClass substanceKind)
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{
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//create an empty datatable
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DataTable parameterTable = CreateTable();
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//if failed to convert object
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Autodesk.Revit.DB.Material material = o as Autodesk.Revit.DB.Material;
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if (material == null)
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{
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return parameterTable;
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}
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Parameter temporaryAttribute = null; // hold each parameter
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string temporaryValue = ""; // hold each value
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#region Get all material element parameters
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//- Behavior
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_BEHAVIOR);
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switch (temporaryAttribute.AsInteger())
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{
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case 0:
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AddDataRow(temporaryAttribute.Definition.Name, "Isotropic", parameterTable);
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break;
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case 1:
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AddDataRow(temporaryAttribute.Definition.Name, "Orthotropic", parameterTable);
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break;
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default:
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AddDataRow(temporaryAttribute.Definition.Name, "None", parameterTable);
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break;
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}
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//- Young's Modulus
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_YOUNG_MOD1);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_YOUNG_MOD2);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_YOUNG_MOD3);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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// - Poisson Modulus
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_POISSON_MOD1);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_POISSON_MOD2);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_POISSON_MOD3);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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// - Shear Modulus
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_SHEAR_MOD1);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_SHEAR_MOD2);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_SHEAR_MOD3);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Thermal Expansion Coefficient
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_EXP_COEFF1);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_EXP_COEFF2);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_EXP_COEFF3);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Unit Weight
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_UNIT_WEIGHT);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Bending Reinforcement
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_BENDING_REINFORCEMENT);
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if (null != temporaryAttribute)
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{
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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}
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//- Shear Reinforcement
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_SHEAR_REINFORCEMENT);
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if (null != temporaryAttribute)
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{
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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}
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//- Resistance Calc Strength
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_RESISTANCE_CALC_STRENGTH);
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if (null != temporaryAttribute)
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{
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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}
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// For Steel only:
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if (StructuralAssetClass.Metal == substanceKind)
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{
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//- Minimum Yield Stress
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_MINIMUM_YIELD_STRESS);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Minimum Tensile Strength
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_MINIMUM_TENSILE_STRENGTH);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Reduction Factor
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_REDUCTION_FACTOR);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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}
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// For Concrete only:
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if (StructuralAssetClass.Concrete == substanceKind)
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{
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//- Concrete Compression
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_CONCRETE_COMPRESSION);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Lightweight
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_LIGHT_WEIGHT);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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//- Shear Strength Reduction
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temporaryAttribute = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_SHEAR_STRENGTH_REDUCTION);
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temporaryValue = temporaryAttribute.AsValueString();
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AddDataRow(temporaryAttribute.Definition.Name, temporaryValue, parameterTable);
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}
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#endregion
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return parameterTable;
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}
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/// <summary>
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/// Update cache material
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/// </summary>
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/// <param name="obj">new material</param>
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public void UpdateMaterial(object obj)
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{
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if (null == obj)
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{
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throw new ArgumentNullException();
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}
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{
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m_cacheMaterial = obj as Material;
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}
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}
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/// <summary>
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/// set the material of selected component
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/// </summary>
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public void SetMaterial()
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{
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if (null == m_cacheMaterial || null == m_currentMaterial)
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{
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return;
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}
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Autodesk.Revit.DB.ElementId identity = m_cacheMaterial.Id;
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m_currentMaterial.Set(identity);
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}
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/// <summary>
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/// change unit weight of selected component to 14.50 kN/m3
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/// </summary>
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public bool ChangeUnitWeight()
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{
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Autodesk.Revit.DB.Material material = GetCurrentMaterial();
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if (material == null)
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{
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return false;
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}
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Parameter weightPara = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_UNIT_WEIGHT);
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weightPara.Set(ChangedUnitWeight / ToMetricUnitWeight);
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return true;
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}
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/// <summary>
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/// firstly, check whether only one beam, column or brace is selected
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/// then initialize some member variables
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/// </summary>
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/// <returns>is the initialize successful</returns>
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private bool Init()
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{
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//selected 0 or more than 1 component
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if (m_revit.ActiveUIDocument.Selection.GetElementIds().Count != 1)
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{
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return false;
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}
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try
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{
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GetSelectedComponent();
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//selected component isn't beam, column or brace
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if (m_selectedComponent == null)
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{
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return false;
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}
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//initialize some member variables
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GetAllMaterial();
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return true;
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}
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catch
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{
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return false;
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}
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}
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/// <summary>
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/// get current material of selected component
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/// </summary>
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private Autodesk.Revit.DB.Material GetCurrentMaterial()
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{
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if (null != m_cacheMaterial)
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return m_cacheMaterial;
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int identityValue = 0;
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if (m_currentMaterial != null)
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identityValue = m_currentMaterial.AsElementId().IntegerValue; //get the value of current material's ElementId
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//material has no value
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if (identityValue <= 0)
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{
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return null;
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}
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Autodesk.Revit.DB.Material material = (Autodesk.Revit.DB.Material)m_allMaterialMap[identityValue];
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return material;
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}
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/// <summary>
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/// get selected beam, column or brace
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/// </summary>
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/// <returns></returns>
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private void GetSelectedComponent()
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{
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ElementSet componentCollection = new ElementSet();
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foreach (ElementId elementId in m_revit.ActiveUIDocument.Selection.GetElementIds())
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{
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componentCollection.Insert(m_revit.ActiveUIDocument.Document.GetElement(elementId));
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}
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if (componentCollection.Size != 1)
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{
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return;
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}
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//if the selection is a beam, column or brace, find out its parameters for display
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foreach (object o in componentCollection)
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{
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FamilyInstance component = o as FamilyInstance;
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if (component == null)
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{
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continue;
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}
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if (component.StructuralType == StructuralType.Beam
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|| component.StructuralType == StructuralType.Brace
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|| component.StructuralType == StructuralType.Column)
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{
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//get selected beam, column or brace
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m_selectedComponent = component;
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}
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//selection is a beam, column or brace, find out its parameters
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foreach (object p in component.Parameters)
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{
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Parameter attribute = p as Parameter;
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if (attribute == null)
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{
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continue;
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}
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string parameterName = attribute.Definition.Name;
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// The "Beam Material" and "Column Material" family parameters have been replaced
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// by the built-in parameter "Structural Material".
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//if (parameterName == "Column Material" || parameterName == "Beam Material")
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if (parameterName == "Structural Material")
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{
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//get current material of selected component
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m_currentMaterial = attribute;
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break;
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}
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}
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}
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}
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/// <summary>
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/// get all materials exist in current document
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/// </summary>
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/// <returns></returns>
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private void GetAllMaterial()
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{
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FilteredElementCollector collector = new FilteredElementCollector(m_revit.ActiveUIDocument.Document);
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FilteredElementIterator i = collector.OfClass(typeof(Material)).GetElementIterator();
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i.Reset();
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bool moreValue = i.MoveNext();
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while (moreValue)
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{
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Autodesk.Revit.DB.Material material = i.Current as Autodesk.Revit.DB.Material;
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if (material == null)
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|
{
|
|
moreValue = i.MoveNext();
|
|
continue;
|
|
}
|
|
//get the type of the material
|
|
StructuralAssetClass materialType = GetMaterialType(material);
|
|
|
|
//add materials to different ArrayList according to their types
|
|
switch (materialType)
|
|
{
|
|
case StructuralAssetClass.Metal:
|
|
{
|
|
m_steels.Add(new MaterialMap(material));
|
|
break;
|
|
}
|
|
case StructuralAssetClass.Concrete:
|
|
{
|
|
m_concretes.Add(new MaterialMap(material));
|
|
break;
|
|
}
|
|
default:
|
|
{
|
|
break;
|
|
}
|
|
}
|
|
//map between materials and their elementId
|
|
m_allMaterialMap.Add(material.Id.IntegerValue, material);
|
|
moreValue = i.MoveNext();
|
|
}
|
|
}
|
|
|
|
/// <summary>
|
|
/// Create an empty table with parameter's name column and value column
|
|
/// </summary>
|
|
/// <returns></returns>
|
|
private DataTable CreateTable()
|
|
{
|
|
// Create a new DataTable.
|
|
DataTable propDataTable = new DataTable("ParameterTable");
|
|
|
|
// Create parameter column and add to the DataTable.
|
|
DataColumn paraDataColumn = new DataColumn();
|
|
paraDataColumn.DataType = System.Type.GetType("System.String");
|
|
paraDataColumn.ColumnName = "Parameter";
|
|
paraDataColumn.Caption = "Parameter";
|
|
paraDataColumn.ReadOnly = true;
|
|
// Add the column to the DataColumnCollection.
|
|
propDataTable.Columns.Add(paraDataColumn);
|
|
|
|
// Create value column and add to the DataTable.
|
|
DataColumn valueDataColumn = new DataColumn();
|
|
valueDataColumn.DataType = System.Type.GetType("System.String");
|
|
valueDataColumn.ColumnName = "Value";
|
|
valueDataColumn.Caption = "Value";
|
|
valueDataColumn.ReadOnly = false;
|
|
propDataTable.Columns.Add(valueDataColumn);
|
|
|
|
return propDataTable;
|
|
}
|
|
|
|
/// <summary>
|
|
/// add one row to datatable of parameter
|
|
/// </summary>
|
|
/// <param name="parameterName">name of parameter</param>
|
|
/// <param name="parameterValue">value of parameter</param>
|
|
/// <param name="parameterTable">datatable to be added row</param>
|
|
private void AddDataRow(string parameterName, string parameterValue, DataTable parameterTable)
|
|
{
|
|
DataRow newRow = parameterTable.NewRow();
|
|
newRow["Parameter"] = parameterName;
|
|
newRow["Value"] = parameterValue;
|
|
parameterTable.Rows.Add(newRow);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Get the material type via giving material.
|
|
/// According to my knowledge, the material type can be retrieved by two ways now:
|
|
/// 1. If the PropertySetElement exists, retrieve it by PHY_MATERIAL_PARAM_CLASS parameter. (via PropertySetElement class)
|
|
/// 2. If it's indenpendent, retrieve it by PHY_MATERIAL_PARAM_TYPE parameter(via Material class)
|
|
/// </summary>
|
|
/// <param name="material"></param>
|
|
/// <returns></returns>
|
|
private StructuralAssetClass GetMaterialType(Material material)
|
|
{
|
|
if (material.StructuralAssetId != ElementId.InvalidElementId)
|
|
{
|
|
PropertySetElement propElem = m_revit.ActiveUIDocument.Document.GetElement(material.StructuralAssetId) as PropertySetElement;
|
|
Parameter propElemPara = propElem.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_CLASS);
|
|
if (propElemPara != null)
|
|
{
|
|
return (StructuralAssetClass)propElemPara.AsInteger();
|
|
}
|
|
}
|
|
return StructuralAssetClass.Undefined;
|
|
//ElementId propElemId = material.GetMaterialAspectPropertySet(MaterialAspect.Structural);
|
|
//if (ElementId.InvalidElementId == propElemId)
|
|
//{
|
|
// Parameter independentPara = material.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_TYPE);
|
|
// if (null == independentPara)
|
|
// {
|
|
// return MaterialType.Generic;
|
|
// }
|
|
// return (MaterialType)independentPara.AsInteger();
|
|
//}
|
|
//PropertySetElement propElem = m_revit.ActiveUIDocument.Document.GetElement(propElemId) as PropertySetElement;
|
|
//Parameter propElemPara = propElem.get_Parameter(BuiltInParameter.PHY_MATERIAL_PARAM_CLASS);
|
|
//if (null == propElemPara)
|
|
//{
|
|
// return MaterialType.Generic;
|
|
//}
|
|
//return (MaterialType)propElemPara.AsInteger();
|
|
}
|
|
}
|
|
|
|
|
|
/// <summary>
|
|
/// assistant class contains material and its name
|
|
/// </summary>
|
|
public class MaterialMap
|
|
{
|
|
string m_materialName;
|
|
Autodesk.Revit.DB.Material m_material;
|
|
|
|
/// <summary>
|
|
/// constructor without parameter is forbidden
|
|
/// </summary>
|
|
private MaterialMap() { }
|
|
|
|
/// <summary>
|
|
/// constructor
|
|
/// </summary>
|
|
/// <param name="material"></param>
|
|
public MaterialMap(Autodesk.Revit.DB.Material material)
|
|
{
|
|
m_materialName = material.Name;
|
|
m_material = material;
|
|
}
|
|
|
|
/// <summary>
|
|
/// Get the material name
|
|
/// </summary>
|
|
public string MaterialName
|
|
{
|
|
get
|
|
{
|
|
return m_materialName;
|
|
}
|
|
}
|
|
|
|
/// <summary>
|
|
/// Get the material
|
|
/// </summary>
|
|
public Autodesk.Revit.DB.Material Material
|
|
{
|
|
get
|
|
{
|
|
return m_material;
|
|
}
|
|
}
|
|
}
|
|
}
|